English

Multiscale interaction between a large scale magnetic island and small scale turbulence

Plasma Physics 2017-11-22 v2

Abstract

Multiscale interaction between the magnetic island and turbulence has been demonstrated through simultaneous two-dimensional measurements of turbulence and temperature and flow profiles. The magnetic island and turbulence mutually interact via the coupling between the electron temperature (TeT_e) gradient, the TeT_e turbulence, and the poloidal flow. The TeT_e gradient altered by the magnetic island is peaked outside and flattened inside the island. The TeT_e turbulence can appear in the increased TeT_e gradient regions. The combined effects of the TeT_e gradient and the the poloidal flow shear determine two-dimensional distribution of the TeT_e turbulence. When the reversed poloidal flow forms, it can maintain the steepest TeT_e gradient and the magnetic island acts more like a electron heat transport barrier. Interestingly, when the TeT_e gradient, the TeT_e turbulence, and the flow shear increase beyond critical levels, the magnetic island turns into a fast electron heat transport channel, which directly leads to the minor disruption.

Keywords

Cite

@article{arxiv.1705.09487,
  title  = {Multiscale interaction between a large scale magnetic island and small scale turbulence},
  author = {M. J. Choi and J. Kim and J. -M. Kwon and H. K. Park and Y. In and W. Lee and K. D. Lee and G. S. Yun and J. Lee and M. Kim and W. -H. Ko and J. H. Lee and Y. S. Park and Y. -S. Na and N. C. Luhmann and B. H. Park},
  journal= {arXiv preprint arXiv:1705.09487},
  year   = {2017}
}

Comments

15 pages, 6 figures

R2 v1 2026-06-22T19:59:51.642Z